The present invention relates to a method for the multi-lane and multi-row application of labels on articles, such as packaging or the like, which are guided in parallel lanes.
Transverse lane labeling systems are known, for which the articles such as thermoformed packaging or the like, guided in parallel lanes, are labeled with the help of a transfer device, which extends transversely over the article lanes. For this purpose, the labels are, first of all, dispensed on a transfer path, such as an endless transporting belt and transferred to a transferring device. This comprises a lifting tool, which extends along a section of the length of the transfer path and can be lowered onto the articles. At the same time, a row of labels on the transfer path is taken hold of and pressed against the articles. After the labels are pressed on, the lifting tool can return once again back into its starting position. This cyclic movement of the lifting tool against the articles and back again is also referred to in the following as the transfer step.
The German Offenlegungsschrift DE 102 28 243 A1 of the Applicant shows, for example, a traverse lane labeler, the transfer device of which comprises a suction box, over which the transfer path runs, so that the non-adhesive side of the labels can be held by suction at the underside of the suction box. In this case, the lifting tool is formed by a sliding plate arrangement, which can be moved out of the suction box and presses the labels, held by suction, against the articles. The speed of the transfer path and of the backing film, from which the labels are dispensed, can be matched to one another in such a manner, that the labels, taken up on the transfer path, are at the desired distances from one another, which correspond to the lateral distances between the article lanes.
If the articles are to be labeled on the underside, the transfer path and the transfer device must also be disposed underneath the article lane. With that, parts of the labeler requiring maintenance are in an area of the machine frame, to which access is difficult, so that the operation becomes more difficult. In particular, a new backing film of the label dispenser must be threaded into the dispenser edge at regular intervals. If too much time is required for this procedure, the downtime of the labeler is too high and leads to a loss in output. For conventional labelers, shifting the parts, which require service, to an area of the machine, which is more accessible, depends on the construction and is not readily possible.
It is therefore an object of the present invention to provide a labeling method of the type named above, by means of which the operation and maintenance of the above-described labelers is facilitated without suffering a loss of performance. It is a further object to create an appropriate labeler, which is suitable for carrying out such a method.
For the inventive method, the dispensed labels are taken up at a point of the transfer path, which is at a distance from the lifting tool. For this purpose, the transfer path has a free section, which cannot be taken hold of by the lifting tool and which extends upstream from the lifting tool with respect to the running direction of the lane. The labels are transported from the dispensing edge to the lifting tool on this free section. The dispensing edge of the label dispenser may therefore be disposed remote from the lifting tool, for example, in a part; which is outside of the machine frame and is readily accessible. Threading the backing film around the dispensing edge is made easier thereby.
So that there is no loss of performance during the operation of the labeler due to the additional transporting path between the dispensing edge and the lifting tool, the dispensing of the leading label of a row of labels commences already during the transfer step, that is, even before the lifting tool, after it has pressed a preceding row of labels against the articles, has returned back to its starting position. Accordingly, the time, which the lifting tool requires for its movement, can be utilized for transporting subsequent labels to the lifting tool. Ideally, then, no additional time is used in the labeling cycle for the transporting path. The time, at which the dispensing of a row of labels is commenced, is determined here as a function of the transporting path of the labels from the point, at which they are taken up on the transfer path, until they reach the lifting tool, of the lane speed of the transfer path and of the lifting speed of the lifting tool.
Accordingly, the inventive method provides the possibility of shifting the dispensing edge to an easily accessible point of the labeler without lengthening the time required for the application of a row of labels. The additional transporting path is compensated for by selecting the dispensing time early as a function of the speed or of the actual position of the lifting tool. It is even possible to commence the dispensing of a new row while the lifting device with a prior row of labels is still on the way in the direction of the articles. If the lifting time of the lifting tool changes due to a rise in temperature, a changed contacting pressure or the like, the dispensing time can be adapted correspondingly.
In a preferred embodiment of this method, the time of commencing the dispensing of a row of labels is optimized in such a manner, that the period that elapses from the time that the lifting tool returns to its starting position until the leading label of the row of labels reaches the lifting tool, is minimized.
In this case, the new row of labels reaches the lifting tool at the very time when the latter is available for a new transfer step. The time, required for moving the lifting tool, accordingly is used optimally for transporting the labels from the dispensing edge to the lifting tool.
In a further preferred embodiment of the method, the rate of movement of the lifting tool is measured and the time of commencing the dispensing of a row of labels is set as a function of a prior measurement of the speed, with which the lifting tool is moving.
This method takes into account any change in the speed of the lifting tool. In this case, the time, at which the labels are dispensed, is adapted dynamically to the operation of the labeler.
Preferably, the backing film and the transfer path are driven continuously and their driven speeds behave like the center-to center distances between the labels on the backing film and the average lateral center-to center distances between the article lanes.
A labeler for carrying out the inventive method is claimed by claim 5. The dependent claims 6 to 11 relate to preferred embodiments of such a labeler.
In the following an example of the present invention is explained in greater detail by means of the drawing, in which
The labeler 10, shown in
The machine frame 12 comprises two parallel, horizontal longitudinal carriers 26, 28, between which the article lanes 18 run. Lateral lining plates 30, the upper edges of which are mounted to the machine frame 12 and which extend downward as far as the vicinity of the ground, are mounted at the respective longitudinal carriers 26, 28.
Downstream from the unit 22 for applying the packaging film 20, a further labeling unit 32 is disposed, which applies the labels, the details of which are not shown in
At its lower region above the slide block 48, the arm 46 of the label dispenser 34 carries two further guide rolls 56, 58 as well as the dispensing edge 40. The backing film 37 accordingly is guided from the supply roll 36 over the guide rolls 38 at the head 44 downward along the arm 46 over the guide roll 58, over the dispensing edge 40 and, from there, upward around guide roll 56 in the direction of the head 44, in order to be wound on the reel 42. Accordingly, the dispensing edge 40 is disposed somewhat below the lateral longitudinal carrier 28 in a region of the machine frame 12, which is easily accessible from the outside. In particular, for threading the backing film 37 over the guide rolls 56, 58 onto the dispensing edge 40, it is not necessary to grasp far into the lower region of the machine frame 12 underneath the article lanes 18, so that the operation of the labeling dispenser 34 is facilitated. A cut-out 62 in the lateral lining plates 30 ensures good accessibility to the parts of the labeling unit 32, which are disposed laterally below the article lanes 18. These furthermore comprise a transporting lane 64 for accommodating the dispensed labels as well as a transfer device 66, which transfers the labels from the transfer path lane 64 to the underside of the articles 16. This is to be described in greater detail below. Within the scope of the present invention, the dispensing edge 40 may even be shifted into a region laterally on the outside of the machine frame 12, so that the dispensed labels are transported through the cut-out 62 to the transfer device 66 underneath the article lanes 18.
As can be seen in greater detail in
The endless conveyor belt 70 on the left in
Deviating from the embodiment introduced here, it is possible to form the transfer path 64 by a single endless conveyor belt.
The transfer device 66 furthermore comprises a lifting tool for transferring labels, which are held by suction at the transfer path 64, onto the articles 16. This lifting tool is formed by a set of slide plates 80, which in
After the labels have been positioned by the transfer path 64 over the slide plates 80, the latter can be raised through the interstices between the belts of the conveyor belt 70, so that they can take hold of the labels. In the completely extended position in
It can furthermore be seen clearly in
This process is to be explained in greater detail by means of the diagrammatic
As already mentioned, the transfer of a row of labels from the transfer path 64 to the article 16 takes place in a transfers step, in which the set of slide plates 80, as a lifting tool, is extended from its starting position in
During a subsequent return movement of the slide plates 80 in the direction of the starting position, that is, in the downward direction, the dispensed label 92 was transported already in the direction of the slide plates 80 and a subsequent label 94 is placed on the transfer path 64. The time, at which the dispensing of a new row of labels is commenced, can be selected as a function of the transporting path of the labels from the point, at which they have taken up on the transfer path 64, until they reach the slide plates 80, as a function of the speed of the transfer path 64 and as a function of the speed of movement of the slide plates 80. The transport path of the labels is determined here by the distance between the dispensing edge 40 and the right edge 96 of the slide plates 80, which is the first edge to be reached in the running direction B of the transfer path 64. In
This procedure accordingly can be summarized as follows. While a first row of labels 84, 86, 88, 90 is being conveyed in a section T2 of the transfer path 64, over the length of which the upper edges 82 of the slide plates 80 extend, this row of labels 84, 86, 88, 90 is transferred in a transfer step to the articles 16, in that the slide plates 80 are moved against the articles 16. This transfer step furthermore comprises the return motion of the slide plates 80 into their starting position in
It is therefore possible to increase the distance between the dispensing edge 40 and the slide plates 80 without lengthening the labeling time and without the loss of performance associated with such a lengthening. Accordingly, the dispensing edge 40 can be shifted to a point of the labeler, which is easily reached by the operating personnel. This point does not have to be directly on the slide plates 80 and, instead, may be disposed at a distance from the latter. The shifting of the dispensing edge 40 to a point at a distance from the lifting tool therefore becomes effectively possible only by the inventive control of the dispensing process.
Since the operating conditions of the labeler may change, the lifting speed of the lifting tool advantageously is measured and the starting time of the ammencement of the dispensing of a new row of labels 92, 94, 98 can be adjusted as a function of the preceding lifting speed measurement of the slide plates 80. Accordingly, the time of dispensing the labels on the free section T1 of the transfer path 64 is selected optimally also during the operation of the labeler. For this purpose, the inventive labeler comprises a suitable control device as well as measurement devices, which measure, aside from the speed of movement of the slide plates 80, also the speed of the transfer path 64. Optionally, the basic position of the slide plates 80 can also be determined.
Number | Date | Country | Kind |
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10 2008 007 890 | Feb 2008 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
4046613 | Kucheck et al. | Sep 1977 | A |
6868887 | Harte et al. | Mar 2005 | B2 |
7318877 | Harte | Jan 2008 | B2 |
Number | Date | Country |
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27 08 353 | Sep 1977 | DE |
102 28 243 | Jan 2004 | DE |
63062421 | Feb 1987 | JP |
Number | Date | Country | |
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20090199961 A1 | Aug 2009 | US |